Impact Strength of Hybrid Epoxy–Basalt Composites Modified with Mineral and Natural Fillers
The aim of this study was to evaluate the influence of mineral and natural additives (2.5; 5; 10 wt.%) on the impact strength of epoxy–basalt composites. Three types of filler were used to modify the epoxy matrix: basalt powder (BP), basalt microfiber (BF) and sunflower husk ash (SA). The impact str...
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doaj-e8c25cb874a844aebec2e7c4778316a82021-09-25T23:53:53ZengMDPI AGChemEngineering2305-70842021-08-015565610.3390/chemengineering5030056Impact Strength of Hybrid Epoxy–Basalt Composites Modified with Mineral and Natural FillersDanuta Matykiewicz0Mateusz Barczewski1Marwan Suleiman Mousa2Mavinkere Rangappa Sanjay3Suchart Siengchin4Institute of Materials Technology, Faculty of Mechanical Engineering, Poznan University of Technology, Piotrowo 3, 61-138 Poznań, PolandInstitute of Materials Technology, Faculty of Mechanical Engineering, Poznan University of Technology, Piotrowo 3, 61-138 Poznań, PolandDepartment of Physics, Mu’tah University, Al-Karak 61710, JordanNatural Composites Research Group Lab, Department of Materials and Production Engineering, The Sirindhorn International Thai-German Graduate School of Engineering (TGGS), King Mongkut’s University of Technology North Bangkok (KMUTNB), Bangkok 10800, ThailandNatural Composites Research Group Lab, Department of Materials and Production Engineering, The Sirindhorn International Thai-German Graduate School of Engineering (TGGS), King Mongkut’s University of Technology North Bangkok (KMUTNB), Bangkok 10800, ThailandThe aim of this study was to evaluate the influence of mineral and natural additives (2.5; 5; 10 wt.%) on the impact strength of epoxy–basalt composites. Three types of filler were used to modify the epoxy matrix: basalt powder (BP), basalt microfiber (BF) and sunflower husk ash (SA). The impact strength and the maximum force were determined for the materials. The results of the conducted research confirm that the addition of a powder fillers to the epoxy matrix of basalt fiber reinforced composites is an effective method of improving their impact characteristic. The introduction of fillers to epoxy resin allowed to improve the impact properties of all tested groups of laminates. Moreover, in all cases, the introduction of the filler increased the maximum force needed to damage the composite sample and their hardness. For the modified materials, an increase in impact strength was recorded, respectively: by 44% for composites with BP, by 7.5% for composites with BF and by 2.5% for composites with SA.https://www.mdpi.com/2305-7084/5/3/56epoxy compositesbasalt fiberbasalt powdersunflower husk ashimpact strength |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Danuta Matykiewicz Mateusz Barczewski Marwan Suleiman Mousa Mavinkere Rangappa Sanjay Suchart Siengchin |
spellingShingle |
Danuta Matykiewicz Mateusz Barczewski Marwan Suleiman Mousa Mavinkere Rangappa Sanjay Suchart Siengchin Impact Strength of Hybrid Epoxy–Basalt Composites Modified with Mineral and Natural Fillers ChemEngineering epoxy composites basalt fiber basalt powder sunflower husk ash impact strength |
author_facet |
Danuta Matykiewicz Mateusz Barczewski Marwan Suleiman Mousa Mavinkere Rangappa Sanjay Suchart Siengchin |
author_sort |
Danuta Matykiewicz |
title |
Impact Strength of Hybrid Epoxy–Basalt Composites Modified with Mineral and Natural Fillers |
title_short |
Impact Strength of Hybrid Epoxy–Basalt Composites Modified with Mineral and Natural Fillers |
title_full |
Impact Strength of Hybrid Epoxy–Basalt Composites Modified with Mineral and Natural Fillers |
title_fullStr |
Impact Strength of Hybrid Epoxy–Basalt Composites Modified with Mineral and Natural Fillers |
title_full_unstemmed |
Impact Strength of Hybrid Epoxy–Basalt Composites Modified with Mineral and Natural Fillers |
title_sort |
impact strength of hybrid epoxy–basalt composites modified with mineral and natural fillers |
publisher |
MDPI AG |
series |
ChemEngineering |
issn |
2305-7084 |
publishDate |
2021-08-01 |
description |
The aim of this study was to evaluate the influence of mineral and natural additives (2.5; 5; 10 wt.%) on the impact strength of epoxy–basalt composites. Three types of filler were used to modify the epoxy matrix: basalt powder (BP), basalt microfiber (BF) and sunflower husk ash (SA). The impact strength and the maximum force were determined for the materials. The results of the conducted research confirm that the addition of a powder fillers to the epoxy matrix of basalt fiber reinforced composites is an effective method of improving their impact characteristic. The introduction of fillers to epoxy resin allowed to improve the impact properties of all tested groups of laminates. Moreover, in all cases, the introduction of the filler increased the maximum force needed to damage the composite sample and their hardness. For the modified materials, an increase in impact strength was recorded, respectively: by 44% for composites with BP, by 7.5% for composites with BF and by 2.5% for composites with SA. |
topic |
epoxy composites basalt fiber basalt powder sunflower husk ash impact strength |
url |
https://www.mdpi.com/2305-7084/5/3/56 |
work_keys_str_mv |
AT danutamatykiewicz impactstrengthofhybridepoxybasaltcompositesmodifiedwithmineralandnaturalfillers AT mateuszbarczewski impactstrengthofhybridepoxybasaltcompositesmodifiedwithmineralandnaturalfillers AT marwansuleimanmousa impactstrengthofhybridepoxybasaltcompositesmodifiedwithmineralandnaturalfillers AT mavinkererangappasanjay impactstrengthofhybridepoxybasaltcompositesmodifiedwithmineralandnaturalfillers AT suchartsiengchin impactstrengthofhybridepoxybasaltcompositesmodifiedwithmineralandnaturalfillers |
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1717367714084814848 |